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Synthesis of carbon nanotube–Fe-Al2O3 nanocomposite powders by selective reduction of different Al1.8Fe0.2O3 solid solutionsud

机译:通过选择性还原不同的Al1.8Fe0.2O3固溶体合成碳纳米管-Fe-Al2O3纳米复合粉 ud

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摘要

Al1.8Fe0.2O3 solid solutions have been prepared as amorphous, η (cubic) and α (corundum) phases. The oxides have been reduced in a H2–CH4 gas mixture at 900 or 1000 °C, giving rise to composite powders containing alumina, α- and γ-Fe, Fe3C and different forms of carbon including nanotubes, thick tubes and spheroidal particles. The powders have been investigated using a combination of chemical analysis, X-ray diffraction, Mössbauer spectroscopy, scanning and transmission electron microscopy, thermogravimetric analysis and specific surface area measurements. Using the stable form (corundum) of Al1.8Fe0.2O3 as starting material favours the formation of carbon nanotubes compared to the other forms of carbon. This could partly result from the fact that the metal nanoparticles formed upon reduction of the α solid solution, which act as a catalyst for CH4 decomposition and possibly nanotube nucleation, are smaller than when using amorphous or η solid solutions. Moreover, the crystallization of these latter compounds during the reduction in some way provokes the entrapment of carbon within the oxide grains. The nanotubes, most of which are less than 10 nm in diameter, are arranged in bundles several tens of micrometers long.
机译:已将Al1.8Fe0.2O3固溶体制备为无定形,η(立方)和α(刚玉)相。在900或1000°C的H2-CH4气体混合物中,氧化物已被还原,生成了包含氧化铝,α-和γ-Fe,Fe3C和不同形式的碳的复合粉末,包括纳米管,粗管和球状颗粒。结合化学分析,X射线衍射,穆斯堡尔光谱,扫描和透射电子显微镜,热重分析和比表面积测量对粉末进行了研究。与其他形式的碳相比,使用Al1.8Fe0.2O3的稳定形式(刚玉)作为起始材料有利于碳纳米管的形成。这可能部分是由于以下事实:与使用无定形或η固溶体相比,在还原α固溶体时形成的金属纳米颗粒较小,该金属纳米颗粒充当CH4分解和可能的纳米管成核的催化剂。而且,在还原过程中这些后面化合物的结晶以某种方式引起了碳在氧化物颗粒中的截留。大部分直径小于10 nm的纳米管成束排列,长度为几十微米。

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